Ogawa Noriko, Furuishi Takayuki, Nagase Hiromasa, Endo Tomohiro, Takahashi Chisato, Yamamoto Hiromitsu, Kawashima Yoshiaki, Loftsson Thorsteinn, Kobayashi Masaru, Ueda Haruhisa
Department of Pharmaceutical Engineering, School of Pharmacy, Aichi Gakuin University, Nagoya, Iceland.
Department of Physical Chemistry, Faculty of Pharmaceutical Sciences, Hoshi University, Tokyo, Iceland.
J Pharm Pharmacol. 2016 May;68(5):588-97. doi: 10.1111/jphp.12437. Epub 2015 Jun 16.
Water-soluble fentanyl citrate salt has been used in sublingual or buccal formulations for the breakthrough pain treatment. However, fentanyl absorption through the lipid mucosal membrane may be improved by enhancing the non-ionic lipophilic fentanyl base solubility. Therefore, the interaction between cyclodextrins (CDs) and fentanyl base has been evaluated to obtain basic information for its application.
Parent CDs (α-, β- and γ-CD) as well as α- and β-CD derivatives were used for solubility studies with fentanyl base. Nuclear magnetic resonance (NMR) studies were applied in a system including β-CD or glucosyl-β-CD (G1-β-CD) with fentanyl base or fentanyl citrate. (1) H- and (13) C-NMR studies and a two-dimensional rotating frame Overhauser effect spectroscopy (ROESY) study were conducted to confirm inclusion complexes formation.
Parent CDs displayed BS type phase solubility diagrams; β-CD exhibited a strong interaction with fentanyl base. Hydrophilic β-CD derivatives, such as G1-β-CD, displayed AL type phase diagrams and higher solubilizing effects compared with parent CDs. ROESY study suggested that fentanyl phenyl groups were included in β-CD cavity.
This study revealed that hydrophilic β-CD derivatives, such as G1-β-CD, could be useful pharmaceutical additives for oral mucosal formulations because of the improved fentanyl base solubility via inclusion complexation.
水溶性枸橼酸芬太尼盐已用于舌下或口腔制剂以治疗爆发性疼痛。然而,通过增强非离子亲脂性芬太尼碱的溶解度,芬太尼透过脂质粘膜的吸收可能会得到改善。因此,已对环糊精(CDs)与芬太尼碱之间的相互作用进行了评估,以获取其应用的基础信息。
使用母体CDs(α-、β-和γ-CD)以及α-和β-CD衍生物对芬太尼碱进行溶解度研究。在包含β-CD或葡糖基-β-CD(G1-β-CD)与芬太尼碱或枸橼酸芬太尼的体系中进行核磁共振(NMR)研究。进行了¹H-和¹³C-NMR研究以及二维旋转框架奥弗豪泽效应光谱(ROESY)研究以确认包合物的形成。
母体CDs呈现BS型相溶解度图;β-CD与芬太尼碱表现出强烈的相互作用。亲水性β-CD衍生物,如G1-β-CD,呈现AL型相图,且与母体CDs相比具有更高的增溶效果。ROESY研究表明芬太尼的苯基被包含在β-CD腔内。
本研究表明,亲水性β-CD衍生物,如G1-β-CD,由于通过包合作用提高了芬太尼碱的溶解度,可能是口腔粘膜制剂有用的药用添加剂。